SPATIUM M460 PCIe 4.0 NVMe M.2

Differences are marked in red SPATIUM M460 PCIe 4.0 NVMe M.2 250GB SPATIUM M460 PCIe 4.0 NVMe M.2 500GB SPATIUM M460 PCIe 4.0 NVMe M.2 1TB SPATIUM M460 PCIe 4.0 NVMe M.2 2TB
Model Name SPATIUM M460 PCIe 4.0 NVMe M.2 SPATIUM M460 PCIe 4.0 NVMe M.2 SPATIUM M460 PCIe 4.0 NVMe M.2 SPATIUM M460 PCIe 4.0 NVMe M.2
Capacity 250GB 500GB 1TB 2TB
Controller PHISON E21T PHISON E21T PHISON E21T PHISON E21T
Flash Memory 3D NAND 3D NAND 3D NAND 3D NAND
Form Factor M.2 2280 M.2 2280 M.2 2280 M.2 2280
Interface PCIe Gen4x4, NVMe 1.4 PCIe Gen4x4, NVMe 1.4 PCIe Gen4x4, NVMe 1.4 PCIe Gen4x4, NVMe 1.4
Compatibility PCIe Gen4 / Gen3 / Gen2 / Gen1 PCIe Gen4 / Gen3 / Gen2 / Gen1 PCIe Gen4 / Gen3 / Gen2 / Gen1 PCIe Gen4 / Gen3 / Gen2 / Gen1
Dimensions 80.00mm (L) x 22.00mm (W) x 2.15mm (H) 80.00mm (L) x 22.00mm (W) x 2.15mm (H) 80.00mm (L) x 22.00mm (W) x 2.15mm (H) 80.00mm (L) x 22.00mm (W) x 2.15mm (H)
Sequential Read up to (MB/s) 4650 5000 5000 4900
Sequential Write up to (MB/s) 1900 3750 4500 4400
Random Read 4KB up to (IOPS) 220,000 440,000 550,000 525,000
Random Write 4KB up to (IOPS) 470,000 920,000 950,000 950,000
Maximum Operating Power (W) 3.6 4.0 4.3 5.2
Idle Power PS3 (mW) 50 50 50 50
Low Power L1.2 (mW) 5 5 5 5
Operating Temperatures 0°C – 70°C 0°C – 70°C 0°C – 70°C 0°C – 70°C
Storage Temperatures -40°C – 85°C -40°C – 85°C -40°C – 85°C -40°C – 85°C
Terabytes Written (TBW) 200 300 600 1200
Mean Time Between Failure (MTBF) Up to 1,500,000 Hours Up to 1,500,000 Hours Up to 1,500,000 Hours Up to 1,500,000 Hours
Limited Warranty 5 Years, or the coverage for the maximum TBW as stated, whichever comes first. 5 Years, or the coverage for the maximum TBW as stated, whichever comes first. 5 Years, or the coverage for the maximum TBW as stated, whichever comes first. 5 Years, or the coverage for the maximum TBW as stated, whichever comes first.
Advanced Features TRIM (Performance Optimization, OS Support required)<br /> SMART (Self-Monitoring, Analysis and Reporting Technology)<br /> LDPC (Low Density Parity Check) ECC Algorithm<br /> End to End Data Path Protection<br /> APST (Autonomous Power State Transition)<br /> Pyrite (Encryption, Data Security) TRIM (Performance Optimization, OS Support required)<br /> SMART (Self-Monitoring, Analysis and Reporting Technology)<br /> LDPC (Low Density Parity Check) ECC Algorithm<br /> End to End Data Path Protection<br /> APST (Autonomous Power State Transition)<br /> Pyrite (Encryption, Data Security) TRIM (Performance Optimization, OS Support required)<br /> SMART (Self-Monitoring, Analysis and Reporting Technology)<br /> LDPC (Low Density Parity Check) ECC Algorithm<br /> End to End Data Path Protection<br /> APST (Autonomous Power State Transition)<br /> Pyrite (Encryption, Data Security) TRIM (Performance Optimization, OS Support required)<br /> SMART (Self-Monitoring, Analysis and Reporting Technology)<br /> LDPC (Low Density Parity Check) ECC Algorithm<br /> End to End Data Path Protection<br /> APST (Autonomous Power State Transition)<br /> Pyrite (Encryption, Data Security)

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